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Carbon steel and Stainless-stee! cathodic protection design data in Deepsea Water - influence of the environment on the biofilm cathodic activity

机译:碳钢和不锈钢!深海水域的阴极保护设计数据 - 生物膜阴极活动环境的影响

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In natural seawater,many parameters might influence the cathodic protection current demand such as potential,temperature,dissolved oxygen content,biofilm and fouling activity,and calcareous deposit formation.The actual deepsea environment cannot be easily reproduced at laboratory scale.In this study,the influence of the depth on the cathodic protection criteria of carbon steel and stainless steel was investigated in intermediary(1020 m depth)and deep water(2020 m)at the same location.For this purpose,at set of corrosion and environmental sensors,as well as metallic coupons,were exposed during 11 months in Azores in the Atlantic Ocean.On stainless steel,a strong characteristic cathodic depolarization due to biofilm activity was observed in deep water and not in intermediary water.The biological-induced cathodic activity appears thus to be dependent on the environment,even in open seawater.In presence of an electroactive biofilm high and relatively stable current densities were measured.Under such conditions,an important structure depolarization appears,affecting thus the CP design and efficiency.For carbon steel,the cathodic protection data collected in-situ show that the initial and mean(after 11 months)current densities are higher than those recommended by the DNVGL RP B401 standard.Even if mean current densities are expected to continue to decrease slowly with further exposure time,so probably tending to the standard recommendations,the DNVGL RP B401 standard might not be conservative in terms of current densities criteria for these environments.
机译:在天然海水中,许多参数可能影响阴极保护电流需求,如潜在,温度,溶解的氧含量,生物膜和污垢活动,以及钙质沉积物形成。实际的Deepsea环境不能轻易在实验室秤中复制。本研究中,在同一位置的中间(1020米深度)和深水(2020米)中研究了深度对碳钢和不锈钢的阴极保护标准的影响。此目的,在腐蚀和环境传感器上,也是如此作为金属优惠券,在大西洋中11个月内暴露。不锈钢,在深水中观察到由于生物膜活性引起的强烈特征的阴极去极化,而不是中间水。因此,生物诱导的阴极活性出现依赖于环境,即使在开阔的海水中。测量了电活性生物膜的存在高且相对稳定的电流密度。在这种情况下,出现一个重要的结构去极化,从而影响CP设计和效率。对于原位收集的阴极保护数据显示,初始和平均值(11个月后)电流密度高于那些推荐的初始密度DNVGL RP B401标准。即使预计平均电流密度继续在进一步的曝光时间继续缓慢降低,因此可能趋于趋向于标准建议,DNVGL RP B401标准可能在这些环境的当前密度标准方面不保守。

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